Brain-computer interface game applications for combined neurofeedback and biofeedback treatment for children on the autism spectrum.

Frontiers in neuroengineering Pub Date : 2014-07-03 eCollection Date: 2014-01-01 DOI:10.3389/fneng.2014.00021
Elisabeth V C Friedrich, Neil Suttie, Aparajithan Sivanathan, Theodore Lim, Sandy Louchart, Jaime A Pineda
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引用次数: 87

Abstract

Individuals with autism spectrum disorder (ASD) show deficits in social and communicative skills, including imitation, empathy, and shared attention, as well as restricted interests and repetitive patterns of behaviors. Evidence for and against the idea that dysfunctions in the mirror neuron system are involved in imitation and could be one underlying cause for ASD is discussed in this review. Neurofeedback interventions have reduced symptoms in children with ASD by self-regulation of brain rhythms. However, cortical deficiencies are not the only cause of these symptoms. Peripheral physiological activity, such as the heart rate and its variability, is closely linked to neurophysiological signals and associated with social engagement. Therefore, a combined approach targeting the interplay between brain, body, and behavior could be more effective. Brain-computer interface applications for combined neurofeedback and biofeedback treatment for children with ASD are currently nonexistent. To facilitate their use, we have designed an innovative game that includes social interactions and provides neural- and body-based feedback that corresponds directly to the underlying significance of the trained signals as well as to the behavior that is reinforced.

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脑机接口游戏应用于自闭症儿童的神经反馈和生物反馈联合治疗。
患有自闭症谱系障碍(ASD)的个体表现出社交和沟通技能的缺陷,包括模仿、同理心和共同注意力,以及兴趣受限和重复的行为模式。本综述讨论了镜像神经元系统功能障碍与模仿有关并可能是ASD的一个潜在原因这一观点的支持和反对证据。神经反馈干预通过自我调节大脑节律减轻了自闭症儿童的症状。然而,皮质缺陷并不是这些症状的唯一原因。外围生理活动,如心率及其变异性,与神经生理信号密切相关,并与社会参与有关。因此,针对大脑、身体和行为之间相互作用的综合方法可能更有效。目前还没有脑机接口应用于ASD儿童的神经反馈和生物反馈联合治疗。为了促进它们的使用,我们设计了一款包含社交互动的创新游戏,并提供了基于神经和身体的反馈,这些反馈直接对应于训练信号的潜在意义以及被强化的行为。
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